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High-NA two-photon single cell imaging with remote focusing using a diffractive tunable lens

Authors :
May, Molly A.
Bawart, Martin
Langeslag, Michiel
Bernet, Stefan
Kress, Michaela
Ritsch-Marte, Monika
Jesacher, Alexander
Source :
Biomedical Optics Express
Publication Year :
2020
Publisher :
Optical Society of America, 2020.

Abstract

Fast, volumetric structural and functional imaging of cellular and sub-cellular dynamics inside the living brain is one of the most desired capabilities in the neurosciences, but still faces serious challenges. Specifically, while few solutions for rapid 3D scanning exist, it is generally much easier to facilitate fast in-plane scanning than it is to scan axially at high speeds. Remote focusing in which the imaging plane is shifted along the optical axis by a tunable lens while maintaining the position of the sample and objective is a promising approach to increase the axial scan speed, but existing techniques often introduce severe optical aberrations in high-NA imaging systems, eliminating the possibility of diffraction-limited single-cell imaging. Here, we demonstrate near diffraction-limited, volumetric two-photon fluorescence microscopy in which we resolve the deep sub-micron structures of single microglia cells with axial scanning performed using a novel high-NA remote focusing method. Image contrast is maintained to within 7% compared to mechanical sample stepping and the focal volume remains nearly diffraction-limited over an axial range greater than 86 µm.

Subjects

Subjects :
Article

Details

Language :
English
ISSN :
21567085
Volume :
11
Issue :
12
Database :
OpenAIRE
Journal :
Biomedical Optics Express
Accession number :
edsair.pmid..........657ac97b10e400c67e8632fe560d7e19